NTN 4T-687 Single Row Tapered Roller 101.6 mm ID Taper Roller Bearing, 133.5 mm OD

Sous-total (1 unité)*

114,82 €

(TVA exclue)

138,93 €

(TVA incluse)

Add to Basket
sélectionner ou taper la quantité
Temporairement en rupture de stock
  • Expédition à partir du 23 mars 2026
Besoin de plus? Cliquez sur " Vérifier les dates de livraison " pour plus de détails
Unité
Prix par unité
1 +114,82 €

*Prix donné à titre indicatif

N° de stock RS:
455-315
Référence fabricant:
4T-687
Fabricant:
NTN
Recherchez des produits similaires en sélectionnant un ou plusieurs attributs.
Sélectionner tout

Marque

NTN

Product Type

Taper Roller Bearing

Inside Diameter

101.6 mm

Bore Type

Round

Cage Material

Pressed Steel

Roller Material

Case Hardening Steel

Static Load Rating

340kN

Outside Diameter

133.5 mm

Number of Rows

1

Bearing Dynamic Load Rating

247 KN

Bearing Material

Case Carburised Steel

Standards/Approvals

ABMA, JIS B 1512, RoHS, ISO 355

Series

4T-687

Bearing Type

Single Row Tapered Roller

Race Type

Tapered

Pays d'origine :
JP
The NTN Single row tapered roller bearing is engineered for reliability and efficiency in various industrial applications. Its exceptional design ensures effective load distribution, making it ideal for demanding environments. The innovative construction features a pressed steel cage and advanced rolling element material, which contributes to enhanced performance and longevity. With precise dimensions for both internal and external diameters, this bearing guarantees a snug fit and smooth operation. Crafted by a renowned manufacturer, this product stands out for its ability to withstand dynamic and static loads, ensuring optimal functionality and durability under pressure.

Features a robust construction for increased lifespan and reduced maintenance

Enhanced load distribution contributes to efficient operation

Pressed steel cage improves strength and reliability of the bearing

Compatibility with various applications makes it a versatile choice

Lightweight design aids in energy efficiency without sacrificing strength

Liens connexes